Parotid glands have a dysregulated immune response following radiation therapy
Gunning, J. A.; Zuniga, T.; Gilman, K. E.; Simpson, R. J.; Limesand, K. H.
Show abstract
Head and neck cancer treatment often consists of surgical resection of the tumor followed by ionizing radiation (IR), which can damage surrounding tissues and cause adverse side effects. The underlying mechanisms of radiation-induced salivary gland dysfunction are not fully understood, and treatment options are scarce and ineffective. The wound healing process is a necessary response to tissue injury, and broadly consists of inflammatory, proliferative, and redifferentiation phases with immune cells playing key roles in all three phases. In this study, select immune cells were phenotyped and quantified, and certain cytokine and chemokine concentrations were measured in mouse parotid glands after IR. Further, we used a model where glandular function is restored to assess the immune phenotype in a regenerative response. These data suggest that irradiated parotid tissue does not progress through a typical inflammatory response observed in wounds that heal. Specifically, total immune cells (CD45+) decrease at days 2 and 5 following IR, macrophages (F4/80+CD11b+) decrease at day 2 and 5 and increase at day 30, while neutrophils (Ly6G+CD11b+) significantly increase at day 30 following IR. Additionally, radiation treatment reduces CD3-cells at all time points, significantly increases CD3+/CD4+CD8+ double positive cells, and significantly reduces CD3+/CD4-CD8-double negative cells at day 30 after IR. Previous data indicate that post-IR treatment with IGF-1 restores salivary gland function at day 30, and IGF-1 injections attenuate the increase in macrophages, neutrophils, and CD4+CD8+ T cells observed at day 30 following IR. Taken together, these data indicate that parotid salivary tissue exhibits a dysregulated immune response following radiation treatment which may contribute to chronic loss of function phenotype in head and neck cancer survivors.
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Analyses of cancer incidence and other morbidities in gamma irradiated B6CF1 mice 92%
- Ilomastat contributes to the survival of mouse after irradiation via promoting the recovery of hematopoietic system 92%
- Curability Difference between Autochthonous Mouse Tumors and Their Transplants in Association with Immune Gene Expression 92%
Similar papers in this journal
- Radiation-induced interferon-I response impairs thyroid organoid function 94%
- A multi-institutional study to investigate the sparing effect after whole brain electron FLASH in mice: Reproducibility and temporal evolution of functional, electrophysiological, and neurogenic endpoints 93%
- Serum miRNA-based signature indicates radiation exposure and dose in humans: a multicenter diagnostic biomarker study 91%
Similar papers in this journal
- Lipid Droplets and Ferritin Heavy Chain: a Devilish Liaison in Cancer Radioresistance 91%
- AR phosphorylation and CHK2 kinase activity regulates IR stabilized AR - CHK2 interaction and prostate cancer survival 91%
- A multi-gene predictive model for the radiation sensitivity of nasopharyngeal carcinoma based on machine learning 91%
Similar papers in this journal
- MET Inhibitor Capmatinib Radiosensitizes MET Exon 14-Mutated and MET-Amplified Non-Small Cell Lung Cancer 93%
- FLASH Bragg-peak irradiation with a therapeutic carbon ion beam: first in vivo results 93%
- Pharmacologic manipulation of complement receptor 3 prevents dendritic spine loss and cognitive impairment after acute cranial radiation 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.